English

Transverse Momentum Dependent Fragmentation and Quark Distribution Functions from the NJL-jet Model

High Energy Physics - Phenomenology 2012-01-20 v2 Nuclear Theory

Abstract

Using the model of Nambu and Jona-Lasinio to provide a microscopic description of both the structure of the nucleon and of the quark to hadron elementary fragmentation functions, we investigate the transverse momentum dependence of the unpolarized quark distributions in the nucleon and of the quark to pion and kaon fragmentation functions. The transverse momentum dependence of the fragmentation functions is determined within a Monte Carlo framework, with the notable result that the average P2P_\perp^2 of the produced kaons is significantly larger than that of the pions. We also find that <P2><P_\perp^2> has a sizable zz dependence, in contrast with the naive Gaussian ansatz for the fragmentation functions. Diquark correlations in the nucleon give rise to a non-trivial flavor dependence in the unpolarized transverse momentum dependent quark distribution functions. The <kT2><k_T^2> of the quarks in the nucleon are also found to have a sizable xx dependence. Finally, these results are used as input to a Monte Carlo event generator for semi-inclusive deep inelastic scattering (SIDIS), which is used to determine the average transverse momentum squared of the produced hadrons measured in SIDIS, namely <PT2><P_T^2>. Again we find that the average PT2P_T^2 of the produced kaons in SIDIS is significantly larger than that of the pions and in each case \laPT2\ra\la P_T^2 \ra has a sizable zz dependence.

Keywords

Cite

@article{arxiv.1111.1740,
  title  = {Transverse Momentum Dependent Fragmentation and Quark Distribution Functions from the NJL-jet Model},
  author = {Hrayr H. Matevosyan and Wolfgang Bentz and Ian C. Cloët and Anthony W. Thomas},
  journal= {arXiv preprint arXiv:1111.1740},
  year   = {2012}
}

Comments

13 pages, 17 figures, v2: minor revisions to conform with the published version in Phys.Rev.D